首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Biofuel combustion. energetics and kinetics of hydrogen abstraction from carbon-1 in n -butanol by the hydroperoxyl radical calculated by coupled cluster and density functional theories and multistructural variational transition-state theory with multidimensional tunneling
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Biofuel combustion. energetics and kinetics of hydrogen abstraction from carbon-1 in n -butanol by the hydroperoxyl radical calculated by coupled cluster and density functional theories and multistructural variational transition-state theory with multidimensional tunneling

机译:生物燃料燃烧。聚簇和密度泛函理论以及多维隧穿结构的多结构变分过渡态理论计算的氢过氧自由基从正丁醇中的碳-1抽氢的能量学和动力学

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摘要

Multistructural canonical variational transition-state theory with small-curvature multidimensional tunneling (MS-CVT/SCT) is employed to calculate thermal rate constants for hydrogen-atom abstraction from carbon-1 of n-butanol by the hydroperoxyl radical over the temperature range 250-2000 K. The M08-SO hybrid meta-GGA density functional was validated against CCSD(T)-F12a explicitly correlated wave function calculations with the jul-cc-pVTZ basis set. It was then used to compute the properties of all stationary points and the energies and Hessians of a few nonstationary points along the reaction path, which were then used to generate a potential energy surface by the multiconfiguration Shepard interpolation (MCSI) method. The internal rotations in the transition state for this reaction (like those in the reactant alcohol) are strongly coupled to each other and generate multiple stable conformations, which make important contributions to the partition functions. It is shown that neglecting to account for the multiple-structure effects and torsional potential anharmonicity effects that arise from the torsional modes would lead to order-of-magnitude errors in the calculated rate constants at temperatures of interest in combustion.
机译:采用小曲率多维隧穿(MS-CVT / SCT)的多结构规范变分过渡态理论来计算温度范围为250-200°C时氢过氧自由基从正丁醇的碳1提取氢原子的热速率常数。 2000K。M08-SO混合meta-GGA密度泛函已通过CCSD(T)-F12a明确相关的波动函数计算与jul-cc-pVTZ基集进行了验证。然后将其用于计算所有固定点的特性以及沿着反应路径的几个非平稳点的能量和Hessian,然后通过多配置Shepard插值(MCSI)方法将其用于生成势能面。该反应在过渡态下的内旋(如反应醇中的内旋)彼此牢固地耦合并产生多个稳定的构象,这对分配功能起重要作用。结果表明,忽略考虑由扭转模态引起的多重结构效应和扭转潜在的非谐效应,将导致在燃烧温度下计算出的速率常数的数量级误差。

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